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Structure Evolution during Severe Warm Plastic Deformation of Carbon Steel

机译:碳钢严重热塑性变形过程中的组织演变

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By application of thermomechanical controlled rolling and accelerated cooling, the ferrite grain refinement is limited to levels of ~ 5 μm in steels. The strain assisted or strain induced transformation could be considered for the refining process. The present work, likewise, deals with grain refinement of medium carbon steel containing 0.45 wt. pct carbon. The structure refinement was conducted in two steps. Preliminary refinement has been achieved due to multistep open die forging process which provided total strain of 3-4. Uniform and fine recrystallized ferrite structure with grain size of the order of 2 μm and with nest-like pearlite colonies was obtained. The further grain refinement was accomplished during warm Equal Channel Angular Pressing (ECAP) at 400 °C of preliminary thermomechanically processed specimens. The steel was subjected to two pressing passes. Employment of this processing route resulted in extensively elongated ferrite grains which were sufficiently refined. The submicrometer order dynamically recrystallized ferrite grains enclosed by subgrains of low angle boundaries were formed within the former elongated ferrite grains. The aim of the investigation was to find an optimized relationship between mechanical properties and microstructure developed in steel.
机译:通过应用热机械控制的轧制和加速冷却,将铁素体晶粒细化限制在钢中〜5μm的水平。可以考虑用应变辅助或应变诱导的转化进行精制。本工作同样涉及含0.45wt。%碳的中碳钢的晶粒细化。 pct碳。分两步进行结构优化。由于多步开模锻造工艺提供了3-4的总应变,因此已经实现了初步精炼。获得了晶粒大小为2μm且具有巢状珠光体集落的均匀且细小的重结晶铁素体结构。进一步的晶粒细化是在初步热机械加工的试样在400°C的温等通道角挤压(ECAP)过程中完成的。对该钢进行两次压制道次。采用这种加工方法可以使铁素体晶粒充分伸长,并得到充分的细化。在以前的细长铁素体晶粒内形成了亚微米级动态重结晶的低角度边界亚晶粒包围的铁素体晶粒。研究的目的是在钢的力学性能和显微组织之间找到优化的关系。

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